FeM2X4 spinels, with the magnetite structure, where M is a transition metal and X is oxygen or sulfur, are candidate materials for spin filters, one of the key devices in spintronics. We present here a computational study of the inversion thermodynamics and the electronic structure of these (thio)spinels for M=Cr,Mn,Co,Ni, using calculations based on the density functional theory with on-site Hubbard corrections (DFT+U). The analysis of the configurational free energies shows that different behavior is expected for the equilibrium cation distributions in these structures: FeCr2X4 and FeMn2S4 are fully normal, FeNi2X4 and FeCo2S4 are intermediate, and FeCo2O4 and FeMn2O4 are fully inverted. We have analyzed the role played by the size of the...
Nickel substituted spinel cobalt oxide is a promising technological material with complex electronic...
The electronic structure of the spinel compound, FeCr2S4, is studied using density-functional-theory...
International audienceThe structural, electronic and magnetic properties of the MnCr2O4 spinel are ...
FeM2X4 spinels, with the magnetite structure, where M is a transition metal and X is oxygen or sulfu...
FeM2X4 spinels, with the magnetite structure, where M is a transition metal and X is oxygen or sulfu...
Recent experiments on Fe substituted spinel CoCr2O4 have discovered multiple functional properties i...
International audience$CoFe_2O_4$ and $NiFe_2O_4$ are well-known insulating and ferrimagnetic spinel...
Spinel-type Fe2SiO4 has been one of the materials receiving much attention in the field of new spint...
Using first-principles density-functional calculations, we perform a comparative study of two Fe-bas...
© 2019 Author(s).We have performed first-principles density functional theory calculations within ge...
Spinels are an attracting class of materials that demonstrate rich complex behaviors at ground state...
High entropy oxides HEOs are a rapidly emerging class of functional materials consisting of multip...
The spinel-structured lithium manganese oxide (LiMn2O4) is a material currently used as cathode for ...
cited By 1International audienceTransition metal spinel oxides have recently been suggested for the ...
High entropy oxides (HEOs) are a rapidly emerging class of functional materials consisting of multip...
Nickel substituted spinel cobalt oxide is a promising technological material with complex electronic...
The electronic structure of the spinel compound, FeCr2S4, is studied using density-functional-theory...
International audienceThe structural, electronic and magnetic properties of the MnCr2O4 spinel are ...
FeM2X4 spinels, with the magnetite structure, where M is a transition metal and X is oxygen or sulfu...
FeM2X4 spinels, with the magnetite structure, where M is a transition metal and X is oxygen or sulfu...
Recent experiments on Fe substituted spinel CoCr2O4 have discovered multiple functional properties i...
International audience$CoFe_2O_4$ and $NiFe_2O_4$ are well-known insulating and ferrimagnetic spinel...
Spinel-type Fe2SiO4 has been one of the materials receiving much attention in the field of new spint...
Using first-principles density-functional calculations, we perform a comparative study of two Fe-bas...
© 2019 Author(s).We have performed first-principles density functional theory calculations within ge...
Spinels are an attracting class of materials that demonstrate rich complex behaviors at ground state...
High entropy oxides HEOs are a rapidly emerging class of functional materials consisting of multip...
The spinel-structured lithium manganese oxide (LiMn2O4) is a material currently used as cathode for ...
cited By 1International audienceTransition metal spinel oxides have recently been suggested for the ...
High entropy oxides (HEOs) are a rapidly emerging class of functional materials consisting of multip...
Nickel substituted spinel cobalt oxide is a promising technological material with complex electronic...
The electronic structure of the spinel compound, FeCr2S4, is studied using density-functional-theory...
International audienceThe structural, electronic and magnetic properties of the MnCr2O4 spinel are ...